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首页> 外文期刊>Journal of Clinical Microbiology >Molecular epidemiologic analysis of Vibrio cholerae O1 isolates by pulsed-field gel electrophoresis.
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Molecular epidemiologic analysis of Vibrio cholerae O1 isolates by pulsed-field gel electrophoresis.

机译:霍乱弧菌O1分离株的分子流行病学分析通过脉冲场凝胶电泳。

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Isolates of Vibrio cholerae O1 El Tor from two well-defined cholera outbreaks in Malaysia were analyzed by using pulsed-field gel electrophoresis (PFGE). Isolates from sporadic cases occurring during the same time period were also studied. Digestion of chromosomal DNA from these isolates of V. cholerae O1 with restriction endonucleases NotI (5'-GCGGCCGC-3') and SfiI (5'-GGCCNNNN-3'), followed by PFGE, produced restriction endonuclease analysis (REA) patterns consisting of 13 to 24 bands (ranging in size from 46 to 398 kbp). Analysis of the REA patterns generated by PFGE after digestion with NotI and SfiI suggested the clonal nature and close genetic identity of the isolates obtained during each of the two outbreaks (Dice coefficient, 0.93 to 1.0). Although they had very similar REA patterns, the two outbreak clones were not identical. Isolates of V. cholerae O1 from sporadic cases, on the other hand, appeared to be much more heterogeneous (five different REA patterns detected in the five isolates tested; Dice coefficient, 0.31 to 0.81) than those obtained during the two outbreaks. We conclude that PFGE of V. cholerae O1 chromosomal DNA digested with infrequently cutting restriction endonucleases is a useful method for molecular typing of V. cholerae isolates for epidemiological purposes.
机译:使用脉冲场凝胶电泳(PFGE)分析了马来西亚两次明确的霍乱暴发的霍乱弧菌O1 El Tor的分离株。还研究了在同一时期发生的零星病例的分离株。用限制核酸内切酶NotI(5'-GCGGCCGC-3')和SfiI(5'-GGCCNNNN-3'),然后用PFGE,从霍乱弧菌O1的这些分离株中消化染色体DNA,然后进行PFGE,产生限制性核酸内切酶分析(REA)模式,包括13至24个频段(大小从46至398 kbp)。 PFGE用NotI和SfiI消化后产生的REA模式分析表明,两次暴发中的每一次暴发都获得了分离株的克隆性质和紧密的遗传同一性(Dice系数,0.93至1.0)。尽管它们具有非常相似的REA模式,但两个爆发克隆并不完全相同。另一方面,从零星病例中分离出的霍乱弧菌O1似乎比两次暴发期间获得的异质性更高(在测试的五个分离物中检测到五个不同的REA模式; Dice系数为0.31至0.81)。我们得出结论,用不经常切割的限制性内切酶消化的霍乱弧菌O1染色体DNA的PFGE是一种用于流行病学目的霍乱弧菌分离物分子分型的有用方法。

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